Plasmid-mediated quinolone resistance – current knowledge and future perspectives

Author:

Guan Xizhou1,Xue Xinying2,Liu Yuxia3,Wang Jing2,Wang Yong2,Wang Jianxin1,Wang Kaifei1,Jiang Hong2,Zhang Lina1,Yang Bing1,Wang N1,Pan Lei2

Affiliation:

1. Department of Respiratory Diseases, Chinese PLA General Hospital, Beijing, China

2. Department of Special Medical Treatment – Respiratory Disease, Beijing Shijitan Hospital Affiliated to Capital Medical University, Beijing, China

3. Research Department, Peking Union Medical Collage Hospital, Beijing, China

Abstract

Quinolones are a group of antimicrobial agents that were serendipitously discovered as byproducts of the synthesis of chloroquine. Chemical modifications, such as the addition of fluorine or piperazine, resulted in the synthesis of third- and fourth-generation fluoroquinolones, with broad-spectrum antimicrobial actions against aerobic or anaerobic, Gram-positive or Gram-negative bacteria. The efficacy and consequent widespread use of quinolones and fluoroquinolones has led to a steady global increase in resistance, mediated via gene mutations, alterations in efflux or cell membranes and plasmid-conferred resistance. The first plasmid-mediated quinolone resistance gene, qnrA1, was detected in 1998. Since then, many other genes have been identified and the underlying mechanisms of resistance have been elucidated. This review provides an overview of quinolone resistance, with particular emphasis on plasmid-mediated resistance.

Publisher

SAGE Publications

Subject

Biochemistry, medical,Cell Biology,Biochemistry,General Medicine

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